Mike's Workshop Manuals: Service manuals for every vehicle
Home >> Ford >> 2012 >> Taurus SE >> Repair and Diagnosis >> External Pages >> Different car >> Section 933 (Climate Control System - General Information And Diagnostics) >> Description And Operation >> Climate Control System >> The Refrigerant Cycle

The Refrigerant Cycle

WARNING: This page is about a different car, the 2007 Ford Ranger. However, it is still accessible from the selected car via links, so may be relevant.

During stabilized conditions (air conditioning system shutdown), the refrigerant is in a vaporized state and pressures are equal throughout the system. When the A/C compressor is in operation, it increases pressure on the refrigerant vapor, raising its temperature. The high-pressure and high-temperature vapor is then released into the top of the condenser core.

The condenser core, being close to ambient temperature, causes the refrigerant vapor to condense into a liquid when heat is removed from the refrigerant by ambient air passing over the fins and tubing. The now liquid refrigerant, still at high pressure, exits from the bottom of the condenser core and enters the inlet side of the evaporator core orifice.

The evaporator core orifice is the restriction in the refrigerant system that creates the high pressure buildup upstream of the evaporator core and separates the high and low pressure sides of the system. As the liquid refrigerant leaves this restriction, its pressure and boiling point are reduced.

The liquid refrigerant is now at its lowest pressure and temperature. As it passes through the evaporator core, it absorbs heat from the passenger compartment airflow passing over the plate/fin sections of the evaporator core. This addition of heat causes the refrigerant to boil (change to gas). The now cooler passenger compartment air can no longer support the same humidity level of the warmer air and this excess moisture condenses on the exterior of the evaporator coils and fins and drains outside the vehicle.

The suction accumulator/drier is designed to remove moisture from the refrigerant and to prevent any liquid refrigerant that may not have been vaporized in the evaporator core from reaching the A/C compressor. The A/C compressor is designed to pump refrigerant vapor only, as liquid refrigerant will not compress and can damage the A/C compressor.

The refrigerant cycle is now repeated with the A/C compressor again increasing the pressure and temperature of the refrigerant.

The A/C cycling switch interrupts compressor operation before the external temperature of the evaporator core gets low enough to cause the condensed water vapor (excess humidity) to turn to ice. It does this by monitoring low side line pressure. It is known that a refrigerant pressure of approximately 210 kPa (30 psi) will yield an operating temperature of 0°C (32°F). The A/C cycling switch controls system operation in an effort to maintain this temperature.

The high side line pressure is also monitored so that the A/C compressor operation can be interrupted if system pressure becomes too high.

The A/C pressure relief valve will open and vent refrigerant to relieve unusually high system pressure.

Fig 1: Clutch Cycling Orifice Tube Type Refrigerant System
GF0007867Courtesy of FORD MOTOR CO.
Item Part Number Description
1 19D701 A/C charge valve port (low side)
2 19E561 A/C cycling switch
3 19C836 Suction accumulator
4 19703 A/C compressor
5 19D644 A/C compressor pressure relief valve
6 19D594 Pressure cutoff switch
7 19D701 A/C charge valve port (high side)
8 19712 Condenser core
9 19D990 Evaporator core orifice
10 19860 Evaporator core (part of 19850, housing assembly)
11 - Low pressure vapor
12 - High pressure vapor
13 - Low pressure liquid
14 - High pressure liquid